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Quantifying the Pumping Energy Loss Associated with Different Types of Leak in a Piping System

机译:量化与管道系统中不同类型的泄漏相关的泵送能量损失

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In this paper, the impact of different types of leaks on the excess pumping energy required in a distribution pipe is investigated. It is now well established that leakage is directly proportional to the pressure at the leak point in a pipe such that a pressure drop is inevitable. In order to compensate this drop in pressure, the pumping energy required to supply demand at a constant pressure has to be increased. How much more energy is required depends on the type and extent of the leak. For the 3 types of simulated leaks namely: orifice, circumferential and longitudinal slits with the same area of discharge, it is found that the excess pumping energy required for a circumferential crack in the pipe is the highest, followed by the orifice and then longitudinal slit as a result of the discharge to sustain customer demand and pressure head. The results of this research can be used to design a more robust control system or pump rescheduling strategy in order to save energy and water with regard to design, operation, and rehabilitation of old water distribution system.
机译:在本文中,研究了不同类型的泄漏对配电管中多余的泵送能量的影响。现在已经很好地确定,泄漏与管道中泄漏点处的压力成正比,因此不可避免地会出现压降。为了补偿这种压力下降,必须增加以恒定压力供应需求所需的泵送能量。需要多少能量取决于泄漏的类型和程度。对于三种类型的模拟泄漏,即:具有相同排放面积的节流孔,周向缝隙和纵向缝隙,发现在管道中产生周向裂纹所需的多余泵送能量最高,其次是孔口,然后是纵向缝隙由于排放而维持客户需求和压头。这项研究的结果可用于设计更强大的控制系统或泵重新调度策略,从而在设计,运行和修复旧配水系统方面节省能源和水。

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